Capsule type battery
By designing a storage and foolproof locking mechanism, the problem of easy damage to the capsule-shaped battery connector is solved, achieving protection of the connector and stable connection of the casing, thus extending the battery's lifespan.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-07
- Publication Date
- 2026-03-27
AI Technical Summary
Traditional capsule-shaped batteries have their connectors directly exposed to the outside world, making them prone to damage from impacts when carried around for extended periods, thus shortening their lifespan.
A capsule-shaped battery was designed, employing a storage mechanism and a foolproof locking mechanism. The storage mechanism allows the insertion interface to be flipped for storage via a rotating shaft, while the foolproof locking mechanism ensures stable docking of the casing and prevents misalignment through a limit rod and splicing block.
It effectively protects the connector from impact and wear, reduces positional misalignment and displacement, and extends battery life.
Smart Images

Figure CN224053296U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to battery technology field, concretely is a capsule type battery. BACKGROUND
[0002] Capsule type battery is a small portable power bank, its design and designation all come from its shape and size similar to capsule, although small, but capsule type battery usually has certain battery capacity, can satisfy daily emergency charging demand, when using, since the plug-in interface of traditional capsule type battery is directly exposed to the outside world, causes damage when carrying for a long time, in turn causes the service life of capsule type battery whole shortening.
[0003] In order to overcome the above-mentioned defects, prior art (the China patent with the announcement number CN204794251U, the announcement date is November 18, 2015) a kind of capsule type power bank, including power bank upper shell and power bank lower shell, the power bank upper shell and power bank lower shell sliding connection;The upper surface of the power bank upper shell is equipped with charging indicator light and switch;Power bank upper shell front end is equipped with USB socket;The inner side of the power bank lower shell is equipped with circuit board, capsule type battery is evenly arranged on the circuit board;Micro-USB socket B is opened on the circuit board, micro-USB plug is equipped on the capsule type battery, micro-USB plug is inserted into micro-USB socket B;Power bank lower shell side wall middle position is equipped with micro-USB socket A.Structure is simple, and it is reasonable in design to adopt capsule type battery, and micro-USB plug is set on the capsule type battery, can directly charge mobile phone, need not power cord, it is very convenient to use.By setting battery power indicator light on the capsule type battery, remaining power can be directly understood.
[0004] The above-mentioned mechanism can be connected with mobile phone charging by using plug, but in actual use, plug is directly exposed to the outside world, when capsule type battery is not used, plug is damaged, not convenient to store, affect the service life of whole. UTILITY MODEL CONTENTS
[0005] The utility model aims at providing a kind of capsule type battery, to solve the problem that the plug-in interface of traditional capsule type battery is directly exposed to the outside world in the above background art, cause damage when carrying for a long time, in turn cause the service life of capsule type battery whole shortening.
[0006] To achieve the above object, the utility model provides following technical scheme: a capsule type battery, first shell is connected with second shell in the side, and the inside of first shell and second shell is connected with battery body, the front and back of first shell and second shell are all connected with side shell, and the bottom of first shell and second shell is provided with the receiving mechanism of reducing the wear and tear of plug interface, the receiving mechanism includes receiving groove, and the receiving groove is opened in the bottom of first shell and second shell, and the inside of receiving groove is rotatably connected with the pivot, the outside of pivot is equipped with output plug interface, the front of side shell is equipped with input plug interface, and the prevention of butt joint misplacement is provided with foolproof locking mechanism between first shell and second shell.
[0007] Further, the inner side of the first shell and the second shell is provided with a limiting rod, and the inner side of the limiting rod is arc-shaped, and the inner side of the limiting rod is fitted with the outer side of the battery body.
[0008] Further, the foolproof locking mechanism includes a positioning groove, and the positioning groove is fixedly connected to the front and back of the bottom of the second shell, the bottom of the first shell is fixedly connected with a positioning block matched with the positioning groove, the front and back of the upper side of the side of the second shell are provided with butt joint columns, and the front and back of the upper side of the side of the first shell are provided with butt joint holes matched with the butt joint columns.
[0009] Further, the upper side of the side of the second shell is fixedly connected with an upper splicing groove matched with the upper splicing block, and the lower side of the side of the second shell is fixedly connected with a lower splicing block matched with the lower splicing groove.
[0010] Further, the cross section of the lower splicing groove is "L" shaped, and the side shell is symmetrically distributed about the vertical central axis of the first shell.
[0011] Further, the upper end of the inner side of the second shell is fixedly connected with a first limiting block, and the upper end of the inner side of the first shell is provided with a fixed block matched with the first limiting block, the side of the fixed block penetrates and extends to the inside of the first limiting block, and the side of the first limiting block is arc-shaped, and the bottom side of the first limiting block is fitted with the outer side of the battery body.
[0012] Further, the upper end of the inner side of the second shell is fixedly connected with a second limiting block, and the top end of the fixed block is provided with a fixed groove matched with the second limiting block.
[0013] Compared with the prior art, the utility model has the beneficial effects that:
[0014] 1. The output plug interface is connected to the inside of the storage groove through a rotating shaft, so that the output plug interface can rotate its angle according to the needs, and when needed, the output plug interface is turned over by 90 degrees or 180 degrees, so that the output plug interface can be more fitted with the docking place, reducing the extrusion condition, and when not in use, the output plug interface is turned over and stored in the inside of the storage groove, realizing the storage of the output plug interface.
[0015] Further, the arc on the inner side of the limiting rod can be fitted with the outer side of the battery body, so that when the battery body is clamped in the inside of the first shell and the second shell, the gap on the side of the battery body can be filled by the shape of the limiting rod itself, so that the position deviation and shaking of the battery body during clamping connection can be effectively avoided.
[0016] Further, the side of the bottom end of the first limiting block is provided with an arc surface, which can be fitted with the upper end of the battery body, so that the battery body can be placed in different directions.
[0017] 2. When the first shell and the second shell are spliced, the position between the side shell and the second shell also needs to be adjusted, so that the second shell and the side shell can be spliced synchronously when the first shell and the second shell are docked. The upper splicing block provided on the upper end of the side shell and the upper splicing groove will be docked, and the lower splicing block provided on the lower end of the side shell and the lower splicing groove will be docked, so that the second shell and the side shell can be docked more stably.
[0018] Further, when the first shell and the second shell are docked, the fixed block provided on the upper end of the first shell and the first limiting block provided on the upper end of the second shell can prevent misalignment. The cross section of the first limiting block is similar to an inverted C shape, so when the fixed block and the first limiting block are docked, the fixed block will be inserted into the groove of the first limiting block. Since the position and number of the fixed block and the first limiting block are fixed, the fixed block and the first limiting block can effectively prevent misalignment when they are docked. BRIEF DESCRIPTION OF DRAWINGS
[0019] Figure 1 It is a front view structural schematic diagram of the utility model.
[0020] Figure 2 It is a side view sectional structure schematic diagram of the utility model.
[0021] Figure 3 It is an inside structure schematic diagram of the first shell of the utility model.
[0022] Figure 4 It is an inside structure schematic diagram of the second shell of the utility model.
[0023] Figure 5 This is a frontal sectional view of the present invention.
[0024] Figure 6 This utility model Figure 2 Enlarged structural diagram at point A in the middle.
[0025] In the diagram: 1. First housing; 2. Second housing; 3. Side housing; 4. Input interface; 5. Output interface; 6. Battery body; 7. Limiting rod; 8. Fixing block; 9. Fixing groove; 10. First limiting block; 11. Second limiting block; 12. Docking hole; 13. Docking post; 14. Lower splicing groove; 15. Lower splicing block; 16. Upper splicing groove; 17. Upper splicing block; 18. Rotating shaft; 19. Positioning block; 20. Positioning groove; 21. Storage groove. Detailed Implementation
[0026] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0027] Example 1: As Figure 1 , Figure 2 , Figure 3 and Figure 4 The technical solution shown addresses the problem that traditional capsule-shaped batteries have their connectors directly exposed to the outside, making them prone to damage from impacts during long-term carrying and thus shortening their overall lifespan. This capsule-shaped battery discloses a storage mechanism, including a first housing 1. A second housing 2 is snapped onto the side of the first housing 1, and a battery body 6 is snapped onto the inside of both the first and second housings. Side housings 3 are snapped onto both the front and rear ends of the first and second housings. A storage mechanism to reduce wear on the connector is provided at the bottom of the first and second housings. The storage mechanism includes a storage groove 21, which is located at the bottom of the first and second housings. A rotating shaft 18 is rotatably connected inside the storage groove 21, and an output connector 5 is sleeved on the outside of the rotating shaft 18.
[0028] In this case, the output plug interface 5 is directly exposed to the outside in the unused state, which may cause collision and wear of the output plug interface 5 due to collision. The output plug interface 5 is rotatably connected to the inside of the storage groove 21 through the rotating shaft 18, so that the output plug interface 5 can rotate its angle according to the needs. When needed, the output plug interface 5 is turned over by 90 degrees or 180 degrees, so that the output plug interface 5 can be more closely matched with the docking place, reducing the extrusion condition. When not in use, the output plug interface 5 is turned over and stored in the inside of the storage groove 21, realizing the storage of the output plug interface 5.
[0029] Embodiment two: as shown in Figure 2 , Figure 3 , Figure 4 and Figure 5 The technical scheme is to solve the problem that the battery body 6 is easily shaken in position when protected by the first shell 1 and the second shell 2. The capsule battery discloses a limiting mechanism. The inner side of the first shell 1 and the second shell 2 is provided with a limiting rod 7, and the inner side of the limiting rod 7 is arc-shaped, and the inner side of the limiting rod 7 is matched with the outer side of the battery body 6.
[0030] In this case, the arc-shaped inner side of the limiting rod 7 can be matched with the outer side of the battery body 6 when the battery body 6 is clamped and connected to the inside of the first shell 1 and the second shell 2. When the battery body 6 is clamped and connected to the inside of the first shell 1 and the second shell 2, the gap on the side of the battery body 6 will be filled by the shape of the limiting rod 7, so that the position offset and shaking of the battery body 6 can be effectively avoided when clamped and connected. The side of the bottom end of the first limiting block 10 is provided with an arc surface, which can be matched with the upper end of the battery body 6, so that the battery body 6 can be placed in different directions.
[0031] Embodiment three: as shown in Figure 2 , Figure 3 , Figure 4 , Figure 5 and Figure 6The technical scheme is shown, in order to solve the problem that the first shell 1 and the second shell 2 may be misaligned when being docked and assembled, resulting in assembly failure: the capsule battery discloses a foolproof locking mechanism, the front end of the side shell 3 is provided with an input plug interface 4, and the first shell 1 and the second shell 2 are provided with a foolproof locking mechanism for avoiding misalignment during docking; the foolproof locking mechanism comprises a positioning groove 20, and the positioning groove 20 is fixedly connected to the front and rear ends of the bottom end of the second shell 2, the bottom end of the first shell 1 is fixedly connected with a positioning block 19 matched with the positioning groove 20, the front and rear ends of the upper side of the second shell 2 are provided with a docking column 13, and the front and rear ends of the upper side of the side of the first shell 1 are provided with a docking hole 12 matched with the docking column 13; the upper side of the side shell 3 close to one end of the battery body 6 is provided with an upper splicing block 17, the upper side of the side of the second shell 2 is fixedly connected with an upper splicing groove 16 matched with the upper splicing block 17, the lower side of the side shell 3 close to one end of the battery body 6 is provided with a lower splicing groove 14, and the lower side of the side of the second shell 2 is fixedly connected with a lower splicing block 15 matched with the lower splicing groove 14; the cross section of the lower splicing groove 14 is in the shape of "L", and the side shell 3 is symmetrically distributed about the vertical direction of the first shell 1; the upper end of the inner side of the second shell 2 is fixedly connected with a first limiting block 10, and the upper end of the inner side of the first shell 1 is provided with a fixed block 8 matched with the first limiting block 10, the side of the fixed block 8 penetrates and extends into the inside of the first limiting block 10, and the side of the first limiting block 10 is arc-shaped, the bottom side of the first limiting block 10 is in close contact with the outside of the battery body 6; the upper end of the inner side of the second shell 2 is fixedly connected with a second limiting block 11, and the top end of the fixed block 8 is provided with a fixed groove 9 matched with the second limiting block 11.
[0032] In this case, the positioning block 19 installed at the bottom end of the first shell 1 can be clamped and docked with the positioning groove 20 arranged at the bottom end of the second shell 2 when the first shell 1 is docked with the second shell 2, so that the bottom ends of the first shell 1 and the second shell 2 can be stably docked when spliced on the basis, and the docking column 13 arranged at the upper end of the first shell 1 and the docking hole 12 can also be clamped and docked when being docked, and when splicing the first shell 1 and the second shell 2, the position between the side shell 3 and the second shell 2 also needs to be adjusted, so that the second shell 2 and the side shell 3 can be spliced synchronously when the first shell 1 and the second shell 2 are docked, the upper splicing block 17 arranged at the upper end of the side shell 3 and the upper splicing groove 16 can be docked, and the lower splicing block 15 arranged at the lower end of the side shell 3 and the lower splicing groove 14 can realize the second docking and locking between the second shell 2 and the side shell 3, so that the second shell 2 and the side shell 3 can be docked more stably; when the first shell 1 and the second shell 2 are docked, the fixed block 8 arranged at the upper end of the first shell 1 and the first limiting block 10 arranged at the upper end of the second shell 2 can prevent misplacement, and the cross section of the first limiting block 10 is similar to an inverted C shape, so that the fixed block 8 can be inserted into the groove of the first limiting block 10 when being docked, and since the position and quantity of the fixed block 8 and the first limiting block 10 are fixed, the fixed block 8 and the first limiting block 10 can stably and effectively avoid misplacement when being docked, and the fixed groove 9 arranged on the surface of the fixed block 8 and the second limiting block 11 arranged inside the second shell 2 can be clamped and docked, so that the fixed block 8 and the first limiting block 10 can be secondarily docked after being docked, thereby increasing the stability of the first shell 1 and the second shell 2 when being docked.
[0033] Although the embodiments of the present application have been shown and described, it should be understood by those skilled in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. A capsule battery, comprising a first shell (1), the side of the first shell (1) is connected with a second shell (2) by snap connection, and the inside of the first shell (1) and the second shell (2) is connected with a battery body (6) by snap connection; characterized in that The front and rear ends of the first shell (1) and the second shell (2) are connected with a side shell (3) by snap connection, and the bottom end of the first shell (1) and the second shell (2) is provided with a receiving mechanism for reducing the wear of the plug interface, the receiving mechanism comprises a receiving groove (21), the receiving groove (21) is opened in the bottom end of the first shell (1) and the second shell (2), and the inside of the receiving groove (21) is rotatably connected with a rotating shaft (18), the outside of the rotating shaft (18) is sleeved with an output plug interface (5); The front end of the side shell (3) is provided with an input plug interface (4), and the first shell (1) and the second shell (2) are provided with a foolproof locking mechanism to avoid misalignment during docking.
2. A jelly-roll battery according to claim 1, wherein: The inside of the first shell (1) and the second shell (2) is provided with a limiting rod (7), and the inside of the limiting rod (7) is arc-shaped, and the inside of the limiting rod (7) is fitted with the outside of the battery body (6).
3. A jelly-roll battery according to claim 1, wherein: The foolproof locking mechanism comprises a positioning groove (20), and the positioning groove (20) is fixedly connected to the front and rear ends of the bottom end of the second shell (2), the bottom end of the first shell (1) is fixedly connected with a positioning block (19) matched with the positioning groove (20), the front and rear ends of the upper side of the second shell (2) are provided with a docking column (13), and the front and rear ends of the upper side of the side of the first shell (1) are provided with a docking hole (12) matched with the docking column (13).
4. A cell according to claim 3, wherein: The upper side of one end of the side shell (3) close to the battery body (6) is provided with an upper splicing block (17), the upper side of the side of the second shell (2) is fixedly connected with an upper splicing groove (16) matched with the upper splicing block (17), and the lower side of one end of the side shell (3) close to the battery body (6) is provided with a lower splicing groove (14), and the lower side of the side of the second shell (2) is fixedly connected with a lower splicing block (15) matched with the lower splicing groove (14).
5. A cell according to claim 4, wherein: The cross section of the lower splicing groove (14) is "L" shaped, and the side shell (3) is symmetrically distributed about the vertical axis of the first shell (1).
6. A jelly-roll battery as defined in claim 5, wherein: The upper end of the inside of the second shell (2) is fixedly connected with a first limiting block (10), and the upper end of the inside of the first shell (1) is provided with a fixed block (8) matched with the first limiting block (10), the side of the fixed block (8) penetrates and extends into the inside of the first limiting block (10), and the side of the first limiting block (10) is arc-shaped, and the bottom side of the first limiting block (10) is fitted with the outside of the battery body (6).
7. A capacitor battery as defined in claim 6, wherein: The upper end of the inside of the second shell (2) is fixedly connected with a second limiting block (11), and the top end of the fixed block (8) is provided with a fixed groove (9) matched with the second limiting block (11).
Citation Information
Patent Citations
Capsule formula treasured that charges
CN204794251U